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Isolation and Identification of Pennogenin Tetraglycoside from Cestrum nocturnum (Solanaceae) and Its Antifungal Activity against Fusarium kuroshium, Causal Agent of Fusarium Dieback

Antifungal assay-guided fractionation of the methanolic crude extract of Cestrum nocturnum (Solanaceae), popular known as ‘lady of the night’, led the isolation and identification of the steroidal saponin named pennogenin tetraglycoside, which was identified for the first time in this plant species...

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Autores principales: Valencia-Mejía, Erika, León-Wilchez, Yeli Y., Monribot-Villanueva, Juan L., Ramírez-Vázquez, Mónica, Bonilla-Landa, Israel, Guerrero-Analco, José A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8951829/
https://www.ncbi.nlm.nih.gov/pubmed/35335224
http://dx.doi.org/10.3390/molecules27061860
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author Valencia-Mejía, Erika
León-Wilchez, Yeli Y.
Monribot-Villanueva, Juan L.
Ramírez-Vázquez, Mónica
Bonilla-Landa, Israel
Guerrero-Analco, José A.
author_facet Valencia-Mejía, Erika
León-Wilchez, Yeli Y.
Monribot-Villanueva, Juan L.
Ramírez-Vázquez, Mónica
Bonilla-Landa, Israel
Guerrero-Analco, José A.
author_sort Valencia-Mejía, Erika
collection PubMed
description Antifungal assay-guided fractionation of the methanolic crude extract of Cestrum nocturnum (Solanaceae), popular known as ‘lady of the night’, led the isolation and identification of the steroidal saponin named pennogenin tetraglycoside, which was identified for the first time in this plant species by spectroscopic means. The crude extract, fractions and pennogenin tetraglycoside exhibited mycelial growth inhibition of Fusarium solani and F. kuroshium. F. solani is a cosmopolitan fungal phytopathogen that affects several economically important crops. However, we highlight the antifungal activity displayed by pennogenin tetraglycoside against F. kuroshium, since it is the first plant natural product identified as active for this phytopathogen. This fungus along with its insect symbiont known as Kuroshio shot hole borer (Euwallacea kuroshio) are the causal agents of the plant disease Fusarium dieback that affects more than 300 plant species including avocado (Persea americana) among others of ecological relevance. Scanning electron microscopy showed morphological alterations of the fungal hyphae after exposure with the active fractions and 12 phenolic compounds were also identified by mass spectrometry dereplication as part of potential active molecules present in C. nocturnum leaves.
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spelling pubmed-89518292022-03-26 Isolation and Identification of Pennogenin Tetraglycoside from Cestrum nocturnum (Solanaceae) and Its Antifungal Activity against Fusarium kuroshium, Causal Agent of Fusarium Dieback Valencia-Mejía, Erika León-Wilchez, Yeli Y. Monribot-Villanueva, Juan L. Ramírez-Vázquez, Mónica Bonilla-Landa, Israel Guerrero-Analco, José A. Molecules Article Antifungal assay-guided fractionation of the methanolic crude extract of Cestrum nocturnum (Solanaceae), popular known as ‘lady of the night’, led the isolation and identification of the steroidal saponin named pennogenin tetraglycoside, which was identified for the first time in this plant species by spectroscopic means. The crude extract, fractions and pennogenin tetraglycoside exhibited mycelial growth inhibition of Fusarium solani and F. kuroshium. F. solani is a cosmopolitan fungal phytopathogen that affects several economically important crops. However, we highlight the antifungal activity displayed by pennogenin tetraglycoside against F. kuroshium, since it is the first plant natural product identified as active for this phytopathogen. This fungus along with its insect symbiont known as Kuroshio shot hole borer (Euwallacea kuroshio) are the causal agents of the plant disease Fusarium dieback that affects more than 300 plant species including avocado (Persea americana) among others of ecological relevance. Scanning electron microscopy showed morphological alterations of the fungal hyphae after exposure with the active fractions and 12 phenolic compounds were also identified by mass spectrometry dereplication as part of potential active molecules present in C. nocturnum leaves. MDPI 2022-03-13 /pmc/articles/PMC8951829/ /pubmed/35335224 http://dx.doi.org/10.3390/molecules27061860 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Valencia-Mejía, Erika
León-Wilchez, Yeli Y.
Monribot-Villanueva, Juan L.
Ramírez-Vázquez, Mónica
Bonilla-Landa, Israel
Guerrero-Analco, José A.
Isolation and Identification of Pennogenin Tetraglycoside from Cestrum nocturnum (Solanaceae) and Its Antifungal Activity against Fusarium kuroshium, Causal Agent of Fusarium Dieback
title Isolation and Identification of Pennogenin Tetraglycoside from Cestrum nocturnum (Solanaceae) and Its Antifungal Activity against Fusarium kuroshium, Causal Agent of Fusarium Dieback
title_full Isolation and Identification of Pennogenin Tetraglycoside from Cestrum nocturnum (Solanaceae) and Its Antifungal Activity against Fusarium kuroshium, Causal Agent of Fusarium Dieback
title_fullStr Isolation and Identification of Pennogenin Tetraglycoside from Cestrum nocturnum (Solanaceae) and Its Antifungal Activity against Fusarium kuroshium, Causal Agent of Fusarium Dieback
title_full_unstemmed Isolation and Identification of Pennogenin Tetraglycoside from Cestrum nocturnum (Solanaceae) and Its Antifungal Activity against Fusarium kuroshium, Causal Agent of Fusarium Dieback
title_short Isolation and Identification of Pennogenin Tetraglycoside from Cestrum nocturnum (Solanaceae) and Its Antifungal Activity against Fusarium kuroshium, Causal Agent of Fusarium Dieback
title_sort isolation and identification of pennogenin tetraglycoside from cestrum nocturnum (solanaceae) and its antifungal activity against fusarium kuroshium, causal agent of fusarium dieback
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8951829/
https://www.ncbi.nlm.nih.gov/pubmed/35335224
http://dx.doi.org/10.3390/molecules27061860
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